Exalos AG

Schlieren 8952

COMPANY OVERVIEW

About Exalos AG

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Contact

Wagistr 21
Schlieren 8952
Switzerland
http://www.exalos.com
215-669-4488
215-752-3663

More Info on Exalos AG

Developer and Supplier of Superluminescent Light Emitting diodes (SLEDS) and Swept Sources to the Fiber Optic Gyroscope, Medical Imaging (OCT), Test Equipment, Sensor and AR/VR markets.

Products

Buyer's Guide

EXS210059-01

1550nm Superluminescent Light Emitting Diode.
Buyer's Guide

EXS210045-01

1310nm Superluminescent Light Emitting Diode.
Buyer's Guide

EXS210022-03

840nm Superluminescent Light Emitting Diode, TO-56 Package.
Buyer's Guide

EXS210030-03

650nm Superluminescent Light Emitting Diode, TO-56 Package
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EXS210014-00

440nm Superluminescent Light Emitting Diode, TO-56 Package.

Articles

The silicon nitride photonic chip-based microresonator with the butt-coupled, 461 nm EXALOS laser diode.
The silicon nitride photonic chip-based microresonator with the butt-coupled, 461 nm EXALOS laser diode.
The silicon nitride photonic chip-based microresonator with the butt-coupled, 461 nm EXALOS laser diode.
The silicon nitride photonic chip-based microresonator with the butt-coupled, 461 nm EXALOS laser diode.
The silicon nitride photonic chip-based microresonator with the butt-coupled, 461 nm EXALOS laser diode.
Science & Research

EPFL researchers demonstrate visible laser diodes with a photonic chip microresonator

Swiss Federal Institute of Technology Lausanne (EPFL) researchers recently demonstrated a hybrid integrated laser using gallium nitride (GaN) ultraviolet (UV)/visible laser diodes...
FIGURE 1. An SD-OCT (a) and SS-OCT (b) system, both with reflective Michelson interferometers.
FIGURE 1. An SD-OCT (a) and SS-OCT (b) system, both with reflective Michelson interferometers.
FIGURE 1. An SD-OCT (a) and SS-OCT (b) system, both with reflective Michelson interferometers.
FIGURE 1. An SD-OCT (a) and SS-OCT (b) system, both with reflective Michelson interferometers.
FIGURE 1. An SD-OCT (a) and SS-OCT (b) system, both with reflective Michelson interferometers.
Detectors & Imaging

Diagnostics/Optical Coherence Tomography: Light source calibration for accurate depth readings from FD-OCT

Producing accurate depth information with Fourier-domain optical coherence tomography (FD-OCT) depends on proper light source calibration; there are different considerations for...
A 3D rendering of Exalos' superluminescent light-emitting diode (SLED) product.
A 3D rendering of Exalos' superluminescent light-emitting diode (SLED) product.
A 3D rendering of Exalos' superluminescent light-emitting diode (SLED) product.
A 3D rendering of Exalos' superluminescent light-emitting diode (SLED) product.
A 3D rendering of Exalos' superluminescent light-emitting diode (SLED) product.
Lasers & Sources

Exalos testing finds their GaN superluminescent LEDs have 5000-hr lifetime

Exalos has completed testing of long-life GaN SLEDs that deliver an estimated lifetime of more than 5000 hrs.
3 Lfw 24 Exalos
3 Lfw 24 Exalos
3 Lfw 24 Exalos
3 Lfw 24 Exalos
3 Lfw 24 Exalos
Lasers & Sources

Exalos OEM module enables field deployment of OCT

A compact swept-source OEM module integrates a miniature swept source in a 26-pin butterfly package with the associated drive electronics, resulting in a 3.5-in. HDD format suited...
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Biophotonics Tools

Balanced receiver for OCT by Exalos

The EBR370000 balanced receivers from Exalos cover wavelength ranges from 400 to 1600 nm to support applications like optical coherence tomography (OCT), which requires high signal...
Lasers & Sources

SLED from Exalos is centered around 1060 nm

The SLED EXS210010 is a fiber-coupled and cooled superluminescent light-emitting diode (SLED) that is centered around 1060 nm.
FIGURE 1. Atomic-force microscopy shows a QD array (InAs on GaAs) for emission at 1300 nm (left). Schematic diagram of conduction band of a single QD, simplified for clarity, shows only two sets of energy levels: 'ground state' (GS) and 'excited state' (ES), analogous to the atomic s and p shells (right).
FIGURE 1. Atomic-force microscopy shows a QD array (InAs on GaAs) for emission at 1300 nm (left). Schematic diagram of conduction band of a single QD, simplified for clarity, shows only two sets of energy levels: 'ground state' (GS) and 'excited state' (ES), analogous to the atomic s and p shells (right).
FIGURE 1. Atomic-force microscopy shows a QD array (InAs on GaAs) for emission at 1300 nm (left). Schematic diagram of conduction band of a single QD, simplified for clarity, shows only two sets of energy levels: 'ground state' (GS) and 'excited state' (ES), analogous to the atomic s and p shells (right).
FIGURE 1. Atomic-force microscopy shows a QD array (InAs on GaAs) for emission at 1300 nm (left). Schematic diagram of conduction band of a single QD, simplified for clarity, shows only two sets of energy levels: 'ground state' (GS) and 'excited state' (ES), analogous to the atomic s and p shells (right).
FIGURE 1. Atomic-force microscopy shows a QD array (InAs on GaAs) for emission at 1300 nm (left). Schematic diagram of conduction band of a single QD, simplified for clarity, shows only two sets of energy levels: 'ground state' (GS) and 'excited state' (ES), analogous to the atomic s and p shells (right).
Research

QUANTUM-DOT SOURCES: Quantum-dot development pursues new applications

Despite limited gain and modulation response, quantum dots offer several advantages as optical sources for telecommunications and other industrial applications.

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